DocumentCode :
2814368
Title :
Fault detection observer design for linear discrete-time systems in finite frequency domain
Author :
Wang, Heng ; Yang, Guang-hong
Author_Institution :
Northeastern Univ., Shenyang
fYear :
2007
fDate :
12-14 Dec. 2007
Firstpage :
378
Lastpage :
383
Abstract :
This paper deals with the fault detection (FD) problem in finite frequency domain for linear time-invariant discrete-time systems with bounded disturbances. A fault detection observer is designed by employing two finite frequency performance indexes which are used to increase the fault sensitivity and attenuate the effects of disturbances. Faults are considered in the low frequency domain while disturbances are considered in certain finite frequency domain. With the aid of the Generalized Kalman-Yakubovich-Popov (GKYP) lemma, the design methods are presented in terms of solutions to a set of linear matrix inequalities (LMIs). Numerical examples are given to illustrate the effectiveness of the proposed method.
Keywords :
discrete time systems; linear matrix inequalities; linear systems; observers; Generalized Kalman-Yakubovich-Popov lemma; fault detection observer design; fault sensitivity; finite frequency domain; finite frequency performance index; linear discrete-time system; linear matrix inequalities; linear time-invariant discrete-time system; Control systems; Design methodology; Design optimization; Fault detection; Frequency domain analysis; Linear matrix inequalities; Performance analysis; Symmetric matrices; Transfer functions; USA Councils;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control, 2007 46th IEEE Conference on
Conference_Location :
New Orleans, LA
ISSN :
0191-2216
Print_ISBN :
978-1-4244-1497-0
Electronic_ISBN :
0191-2216
Type :
conf
DOI :
10.1109/CDC.2007.4434021
Filename :
4434021
Link To Document :
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